IF 9.4 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Timothy Klouda, Yunhye Kim, Seung-Han Baek, Mantu Bhaumik, Yan Li, Yu Liu, Joseph C Wu, Benjamin A Raby, Vinicio de Jesus Perez, Ke Yuan
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引用次数: 0

摘要

周细胞对毛细血管的稳定性和平衡至关重要,周细胞功能受损与肺动脉高压等疾病有关。由于缺乏特异性标记物,很难将周细胞与其他基质细胞区分开来,因此研究周细胞生物学具有挑战性。利用生物信息学分析和 RNAscope,我们确定了 Higd1b 是周细胞的独特基因标记物,并随后生成了一个基因敲入小鼠系 Higd1b-CreERT2,它能准确标记肺和心脏中的周细胞。单细胞RNA测序发现了两种不同的Higd1b+周细胞亚型:1型周细胞支持毛细血管的稳态,而2型周细胞聚集在动脉血管中,在缺氧条件下共同表达平滑肌标记和更高水平的波形蛋白。最后,波形蛋白上调的健康人肺周细胞在体外表现出更强的粘附性、迁移性和更高的平滑肌标记物 SM22 表达水平。这些发现突显了肺周细胞的特化及其在缺氧诱发肺动脉高压时对血管重塑的贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Specialized pericyte subtypes in the pulmonary capillaries.

Pericytes are essential for capillary stability and homeostasis, with impaired pericyte function linked to diseases like pulmonary arterial hypertension. Investigating pericyte biology has been challenging due to the lack of specific markers, making it difficult to distinguish pericytes from other stromal cells. Using bioinformatic analysis and RNAscope, we identified Higd1b as a unique gene marker for pericytes and subsequently generated a knock-in mouse line, Higd1b-CreERT2, that accurately labels pericytes in the lung and heart. Single-cell RNA sequencing revealed two distinct Higd1b+ pericyte subtypes: while Type 1 pericytes support capillary homeostasis, Type 2 pericytes accumulate in arterioles, and co-express smooth muscle markers and higher levels of vimentin under hypoxic conditions. Lastly, healthy human lung pericytes with upregulation of vimentin exhibited increased adhesion, migration, and higher expression levels of the smooth muscle marker SM22 in vitro. These findings highlight the specialization of pulmonary pericytes and their contribution to vascular remodeling during hypoxia-induced pulmonary hypertension.

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来源期刊
EMBO Journal
EMBO Journal 生物-生化与分子生物学
CiteScore
18.90
自引率
0.90%
发文量
246
审稿时长
1.5 months
期刊介绍: The EMBO Journal has stood as EMBO's flagship publication since its inception in 1982. Renowned for its international reputation in quality and originality, the journal spans all facets of molecular biology. It serves as a platform for papers elucidating original research of broad general interest in molecular and cell biology, with a distinct focus on molecular mechanisms and physiological relevance. With a commitment to promoting articles reporting novel findings of broad biological significance, The EMBO Journal stands as a key contributor to advancing the field of molecular biology.
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